BASF ULTRAMID B3WG10 LF HOT Sale PA6 Resin
BASF ULTRAMID B3WG10 LF is a high-performance PA6 (Polyamide 6) resin specifically designed for injection molding of demanding structural parts.
Polymer Properties:
- Base Material: PA6 (Polyamide 6)
- Reinforcement: 50% glass fiber and mineral fillers
- Modification Features:
- Long glass fiber reinforcement boosts rigidity and mechanical strength for structural uses.
- Offers good heat resistance, maintaining performance in high – temperature conditions.
- Provides excellent dimensional stability, reducing shrinkage and warpage of molded parts.
- Complies with REACH standard and passes ROHS certification.
- Has good heat – aging resistance for long – term reliability.
Applications:
The immense mechanical properties of ULTRAMID B3WG10 LF are ideal for applications where parts must withstand extreme loads and high temperatures while maintaining dimensional accuracy.
- Direct Metal Replacement in Automotive and Industrial Sectors
- This grade is specifically engineered to replace metal in critical structural components, offering a significant reduction in weight without compromising performance.
- It is used for chassis components, engine mounts, transmission parts, and other load-bearing brackets and housings that require maximum rigidity and strength.
- Heavy-Duty Power Tool and Machinery Housings
- Due to its high stiffness and dimensional stability, B3WG10 LF is used in housings for professional-grade power tools and industrial machinery.
- These parts must resist deformation and maintain the precise alignment of internal components under constant operational stress.
- High-Load Electrical and Electronic Components
- In the electrical and electronics sector, B3WG10 LF is used for high-load connectors, terminal blocks, and structural supports where a very high degree of rigidity and thermal resistance is necessary.
- The lubricant-free formulation is particularly beneficial in applications where contact with lubricants could interfere with electrical connections or bonding processes.